Effect of annealing temperature on the magnetization behavior of LaFe0.5Cr0.5O3

Huanhuan Cao, Huijing Li, Jajun Mo, Zeyi Lu, Yanfang Xia, Min Liu
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Abstract

LaFe[Formula: see text]Cr[Formula: see text]O3 was synthesized using the sol–gel method and subsequently annealed at [Formula: see text]C and [Formula: see text]C. Magnetization curves and Mössbauer spectra were employed to evaluate the macroscopic magnetism of the samples at 300[Formula: see text]K. The results showed that coercivity increased with higher annealing temperatures. Notably, magnetic measurements of the LFCO-900 sample revealed an unusual trend in the M–T curve between 50[Formula: see text]K and 150[Formula: see text]K, likely due to annealing-induced changes in magnetic entropy. Annealing temperature significantly influences LFCO’s magnetic properties. Monte Carlo simulations modeled magnetization’s temperature dependence in disordered systems under varying magnetic field strengths, aligning with observations in LFCO-750. These insights are crucial for furthering understanding of perovskite materials’ physical properties and for enhancing the magnetic entropy effect in such systems, thereby increasing their practical application potential.
退火温度对 LaFe0.5Cr0.5O3 磁化行为的影响
采用溶胶凝胶法合成了 LaFe[式:见正文]Cr[式:见正文]O3,随后在[式:见正文]C 和[式:见正文]C 下退火。利用磁化曲线和莫斯鲍尔光谱评估了样品在 300[式:见正文]K时的宏观磁性。结果表明,矫顽力随着退火温度的升高而增加。值得注意的是,对 LFCO-900 样品进行的磁性测量显示,在 50[式:见正文]K 和 150[式:见正文]K 之间,M-T 曲线出现了不寻常的趋势,这可能是退火引起的磁熵变化所致。退火温度对 LFCO 的磁性能有很大影响。蒙特卡洛模拟模拟了无序系统在不同磁场强度下的磁化温度依赖性,这与在 LFCO-750 中的观察结果一致。这些见解对于进一步了解包晶材料的物理性质以及增强此类系统的磁熵效应,从而提高其实际应用潜力至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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